Foaming agent for gypsum board manufacturing

A foaming agent with branched alkyl sulfate and alkyl ether sulfate forms uniform, spherical voids in gypsum boards, addressing bubble instability and refinement issues, enhancing strength and appearance.

JP7848055B2Active Publication Date: 2026-04-20TOHO CHEM IND
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
TOHO CHEM IND
Filing Date
2022-06-01
Publication Date
2026-04-20

AI Technical Summary

Technical Problem

Existing foaming agents for gypsum boards form coarse and unstable bubbles, leading to blistering and reduced strength due to bubble refinement during manufacturing, affecting the appearance and mechanical properties of the boards.

Method used

A foaming agent comprising alkyl sulfate with a branched alkyl group of specific carbon atoms and branching degree, combined with alkyl ether sulfate and alkyl sulfate, forms nearly uniform and spherical voids in gypsum boards, enhancing stability and reducing bubble refinement.

Benefits of technology

The solution results in reduced bubble refinement and uniform voids, improving the mechanical strength and appearance of gypsum boards while maintaining fluidity and stability.

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Patent Text Reader

Abstract

To provide a foaming agent for manufacturing a gypsum board, capable of forming foam-derived voids almost uniform in size, in the gypsum board having few fine foams.SOLUTION: A foaming agent for manufacturing a gypsum board contains an alkyl sulfate (A) represented by the following general formula (1): R1OSO3M1 (In the formula, R1 represents a 9-11C branched alkyl group having a branching degree of 1.8 to 3.0, obtained by subtracting 1 from the number of methyl groups determined by 1H-NMR measurement; and M1 represents an alkali metal, ammonium or organic ammonium).SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] This invention relates to a foaming agent for manufacturing gypsum board and a method for manufacturing gypsum board using the same. [Background technology]

[0002] Gypsum board is manufactured with air bubbles to reduce weight and improve sound insulation and heat insulation. In this process, foam preformed with a foaming agent is mixed with gypsum slurry and sandwiched between base paper to produce gypsum board. Commonly used foaming agents to form this foam include alkyl sulfate esters and polyoxyalkylene alkyl ether sulfates (see Patent Documents 1-3). [Prior art documents] [Patent Documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 6-239676 [Patent Document 2] Japanese Patent Application Publication No. 7-291761 [Patent Document 3] Special Publication No. 2018-527163 [Overview of the project] [Problems that the invention aims to solve]

[0004] However, while these foaming agents have high foaming power, the lack of stability in the formed bubbles makes them prone to forming coarse bubbles due to the aggregation of bubbles. Coarse bubbles formed in gypsum slurry can cause blistering in surface coating materials such as base paper for gypsum boards placed on the surface. In addition, during the manufacturing process of gypsum boards, mechanical shearing can lead to the refinement of bubbles and the formation of distorted bubbles, reducing the fluidity of the gypsum slurry and potentially causing a decrease in the strength of the gypsum board and deterioration of the appearance of the board's sides. The present invention aims to provide a foaming agent for manufacturing gypsum board that can form voids derived from bubbles that are less fine and of nearly uniform size in the gypsum board. [Means for solving the problem]

[0005] The inventors investigated the foaming agents to be used and confirmed that the size and uniformity of voids originating from the foam contained in the gypsum board differed depending on the type of alkyl group of the alkyl sulfate used as the foaming agent when the gypsum slurry to which foam was added was cured to produce gypsum board. Further investigations revealed that by using an alkyl sulfate having a branched alkyl group with a specific degree of branching and number of carbon atoms as a foaming agent, the resulting gypsum board voids become approximately spherical in shape and nearly uniform in size, thus completing the present invention.

[0006] In other words, the present invention relates to the following [1] to [6]. [1] A foaming agent for the manufacture of gypsum board containing an alkyl sulfate (A) represented by the following general formula (1). R 1 OSO3M 1 (1) (In the formula, R 1 teeth 1 This represents a branched alkyl group with 9 to 11 carbon atoms whose degree of branching, obtained by subtracting 1 from the number of methyl groups determined by H-NMR measurement, is 1.8 to 3.0. 1 (This indicates alkali metals, ammonium, or organic ammonium.) [2] R in the general formula (1) 1 The foaming agent for manufacturing gypsum board according to [1], wherein is a branched alkyl group derived from a branched aliphatic alcohol synthesized from a propylene and / or butylene oligomer by the oxo method. [3] R in the general formula (1) 1 A foaming agent for manufacturing gypsum board according to [1] or [2], wherein the alkyl group is derived from an alcohol containing 80% by mass or more of a branched aliphatic alcohol having 10 carbon atoms. [4] The foaming agent for manufacturing gypsum boards according to any one of [1] to [3], which contains at least one selected from an alkyl ether sulfate (B) represented by the following general formula (2) and an alkyl sulfate (C) represented by the following general formula (3) (excluding those represented by the general formula (1)). R 2 O(CH2CH2O) n SO3M 2 (2) (In the formula, R 2 is an alkyl group having 8 to 18 carbon atoms, n is an integer of 1 to 10, and M 2 represents an alkali metal, ammonium, or organic ammonium.) R 3 OSO3M 3 (3) (In the formula, R 3 is an alkyl group having 8 to 18 carbon atoms, and M 3 represents an alkali metal, ammonium, or organic ammonium.) [5] The foaming agent for manufacturing gypsum boards according to [4], wherein the alkyl sulfate (A) is contained in an amount of 30 to 90% by mass, with the total of (A), (B), and (C) being 100% by mass. [6] A method for manufacturing a gypsum board, comprising a step of generating bubbles by blowing air into the foaming agent according to any one of [1] to [5] or an aqueous solution thereof, and a step of mixing the bubbles into a kneaded material containing calcined gypsum and water to obtain a foamed gypsum slurry.

Advantages of the Invention

[0007] By using the foaming agent of the present invention in the manufacture of gypsum boards, the refinement of bubbles due to mechanical shearing during raw material mixing is reduced, and voids having a substantially spherical shape and substantially uniform size can be formed in the gypsum boards.

Brief Description of the Drawings

[0008] [Figure 1] SEM photograph of the cross-section of the gypsum hardened body in Example 9 [Figure 2] SEM photograph of the cross-section of the gypsum hardened body in Comparative Example 3 [Modes for carrying out the invention]

[0009] The foaming agent for gypsum board manufacturing and the method for manufacturing gypsum board according to the present invention will be described in detail below. <Alkyl sulfate (A)> The foaming agent for gypsum board manufacturing of the present invention contains an alkyl sulfate (A) represented by the following general formula (1). R 1 OSO3M 1 (1) (In the formula, R 1 teeth 1 This represents a branched alkyl group with 9 to 11 carbon atoms whose degree of branching, obtained by subtracting 1 from the number of methyl groups determined by H-NMR measurement, is 1.8 to 3.0. 1 (This indicates alkali metals, ammonium, or organic ammonium.)

[0010] In the above general formula (1), R 1 teeth 1 This refers to branched alkyl groups with 9 to 11 carbon atoms (hereinafter also called "highly branched alkyl groups") whose degree of branching, obtained by subtracting 1 from the number of methyl groups determined by 1H-NMR measurement, is 1.8 to 3.0. Examples of such highly branched alkyl groups include those derived from branched aliphatic alcohols synthesized from propylene or butylene oligomers by the oxo method. Alcohols synthesized by the oxo method are mixtures of structural isomers having multiple methyl groups, but in this case the number of methyl groups is the average value of the mixture, and the number of methyl groups in the molecule can be measured by proton NMR.

[0011] Among polybranched alkyl groups, C10 polybranched alkyl groups derived from alcohols synthesized from propylene trimers by the oxo process are preferred due to their availability; however, due to the manufacturing process, they may contain C9 or C11 alkyl groups. In this case, from the viewpoint of uniformity of bubble size, the content of C10 polybranched alkyl groups is preferably 70% by weight or more, more preferably 80% by weight or more, and most preferably 90% by weight or more.

[0012] In the general formula (1), M1 The ammonium compound is an alkali metal, ammonium, or organic ammonium. Examples of alkali metals include lithium (Li), sodium (Na), and potassium (K). Organic ammonium is ammonium derived from an organic amine, and examples of such organic amines include alkanolamines such as monoethanolamine, diethanolamine, and triethanolamine, as well as methylamine, dimethylamine, trimethylamine, ethylamine, diethylamine, and triethylamine. Among these, alkali metals and ammonium are preferred from the viewpoint of foaming properties, sodium and ammonium are more preferred, and ammonium is particularly preferred.

[0013] Alkyl sulfate (A) can be obtained by sulfurizing the branched aliphatic alcohol with known sulfurizing agents such as chlorosulfonic acid, sulfuric anhydride, or sulfamic acid, and then neutralizing it with sodium hydroxide, potassium hydroxide, aqueous ammonia, or an alkanolamine.

[0014] <Alkyl ether sulfate (B)> The foaming agent for gypsum board manufacturing of the present invention may contain an alkyl ether sulfate (B) represented by the following general formula (2) for purposes such as improving the stability of bubbles. R 2 O(CH2CH2O) n SO3 M 2 (2) (In the formula, R 2 n is an alkyl group with 8 to 18 carbon atoms, n is an integer from 1 to 10, M 2 (This indicates alkali metals, ammonium, or organic ammonium.)

[0015] In the above general formula (2), R 2 This represents an alkyl group having 8 to 18 carbon atoms. The alkyl group having 8 to 18 carbon atoms may be a linear or branched alkyl group, and may contain two or more alkyl groups with different numbers of carbon atoms. Among these, alkyl groups having 10 to 14 carbon atoms are preferred.

[0016] In the above general formula (2), n is the number of moles of ethylene oxide added, and is an integer from 1 to 10, preferably an integer from 1 to 5. Also, M 2 This refers to alkali metals, ammonium, or organic ammonium, specifically M 1 Examples include those listed above. Among these, alkali metals and ammonium are preferred, sodium and ammonium are more preferred, and sodium is particularly preferred.

[0017] <Alkyl sulfate (C)> The foaming agent for manufacturing gypsum board of the present invention may further contain an alkyl sulfate (C) represented by the following general formula (3) (excluding the one represented by the general formula (1)). R 3 OSO3M 3 (3) (In the formula, R 3 M is an alkyl group having 8 to 18 carbon atoms. 3 (This indicates alkali metals, ammonium, or organic ammonium.)

[0018] In the above general formula (3), R 3 This represents an alkyl group having 8 to 18 carbon atoms. The alkyl group having 8 to 18 carbon atoms may be a linear or branched alkyl group, but the aforementioned polybranched alkyl group is not included. Among these, alkyl groups having 12 to 16 carbon atoms are preferred.

[0019] The content of alkyl sulfate (A) in the foaming agent of the present invention is not particularly limited, but from the viewpoint of improving the uniformity of foam size, the total of (A), (B), and (C) is set to 100% by mass, and more preferably to 60% by mass.

[0020] From the viewpoint of improving foam stability, the content of alkyl ether sulfate (B) in the total amount of the foaming agent of the present invention is preferably 5 to 30% by mass, more preferably 5 to 15% by mass, with the total of (A), (B), and (C) being 100% by mass. Furthermore, from the viewpoint of improving foaming power, the content of alkyl sulfate (C) is preferably 5 to 40% by mass, more preferably 5 to 25% by mass.

[0021] A preferred embodiment of the foaming agent for gypsum board manufacturing of the present invention is one in which the total of (A), (B), and (C) is 100% by mass, and the alkyl sulfate (A) is 30 to 90% by mass, the alkyl ether sulfate (B) is 5 to 30% by mass, and the alkyl sulfate (C) is 5 to 40% by mass.

[0022] The foaming agent for gypsum board manufacturing of the present invention may further contain an alcohol having 1 to 4 carbon atoms for the purpose of preventing freezing in winter in cold regions and for preservation. Examples of alcohols having 1 to 4 carbon atoms include methanol, ethanol, propanol, and butanol.

[0023] The foaming agent for gypsum board manufacturing of the present invention can be applied to either the mixing method, in which the foaming agent is directly added to the gypsum slurry, or the pre-forming method, in which it is mixed with the gypsum slurry as foam beforehand, and is not particularly limited to the foaming method. Generally, the pre-forming method is more common, in which air is blown into a foaming agent aqueous solution of 0.01 to 10% by weight to generate foam, and this foam is mixed into a gypsum slurry containing calcined gypsum and water to obtain a foamed gypsum slurry.

[0024] The foaming agent for gypsum board manufacturing of the present invention can be used in the manufacture of gypsum boards for the purpose of weight reduction and heat insulation, but is particularly suitable for the manufacture of lightweight gypsum boards with high strength. [Examples]

[0025] The present invention will be described in more detail below based on examples, but the present invention is not limited thereto. Unless otherwise specified, % refers to mass%.

[0026] The R in the general formula (1) of the alkyl sulfate (A) used in this example 1 Alkyl composition and degree of branching, M 1 This is shown in Table 1. The degree of branching of a branched alkyl group is the value obtained by subtracting 1 from the number of methyl groups determined by the following measurement method. <Method for calculating the number of methyl groups> The alcohol used as the raw material for alkyl sulfate (A) was dissolved in deuterated chloroform, and proton NMR measurements were performed using a 400 MHz NMR spectrometer. The obtained spectrum was integrated, and the number of methyl groups was determined by dividing the integral value of the spectrum originating from methyl groups by 3, with the spectrum at 3-4 ppm being set to 2. (Measurement conditions for proton NMR) Equipment: JEOL Ltd. JNM-ECZ400S Nuclear Magnetic Resonance Spectrometer Observation frequency: 399.78MHz Pulse width: 2.895 μs Pulse repetition time: 7.18628096 sec Total number of times: 64 Measurement temperature: room temperature (20~35℃) Reference: 7.24 ppm Sample tube diameter: 5mm

[0027] Furthermore, the alkyl composition and the distribution of the number of moles of ethylene oxide added (described later) were measured by analyzing the raw material alcohol using gas chromatography (Shimadzu GC-2010 Plus).

[0028] [Table 1]

[0029] The R in the general formula (2) of the alkyl ether sulfate (B) used in this example 2 Alkyl composition and distribution of the number of moles of ethylene oxide added, M 2 This is shown in Table 2.

[0030] [Table 2]

[0031] The R in the general formula (3) of the alkyl sulfate (C) used in this example 3 Alkyl composition and degree of branching, M 3 This is shown in Table 3. Note that R 3 If the group consists only of linear alkyl groups, the degree of branching was set to 0.

[0032] [Table 3]

[0033] Foaming agent compositions were prepared by conventional methods using the components listed in Tables 1 to 3 in the mass ratios shown in Table 4, and their foaming properties were evaluated using the following method. The results are shown in Table 4.

[0034] <Method for evaluating foaming ability> 200g of a 0.2% aqueous solution (20°C) of the foaming agent composition was added to a juicer mixer and stirred for 10 seconds. The resulting foam was transferred to a 1000ml graduated cylinder, and the foaming power of each foaming agent was evaluated according to the following criteria. (1) Amount of foam immediately after preparation ◎: 500ml or more, ○: 300ml or more but less than 500ml, ×: less than 300ml (2) Half-life of foam volume ◎: 10 minutes or more, ○: 5 minutes or more but less than 10 minutes, ×: less than 5 minutes

[0035] [Preparation of foamed gypsum slurry] A sealed container equipped with a nitrogen introduction line and a foaming agent aqueous solution supply line to a foaming machine was filled with 2000g of a 0.2% aqueous solution of the foaming agent composition and pressurized with nitrogen. A foaming machine was prepared with a nitrogen pressure of 0.2 MPa and a flow rate of 50 L / min, and foam was produced by opening the outlet valve of the sealed container and supplying the foaming agent aqueous solution at a rate of 2 L / min.

[0036] As a water-reducing agent, 270 parts of a 0.33% by mass aqueous solution of naphthalene sulfonic acid formalin condensate and 300 parts of calcined gypsum were mixed to prepare a gypsum slurry. 8.55 parts of the foam prepared in the pre-forming process were added to this slurry, and the mixture was mixed for 30 seconds at 400 rpm using a cross-blade agitator to prepare a foamed gypsum slurry. The fluidity was evaluated by measuring the flow value using the following method. The results are shown in Table 4.

[0037] <Method for measuring flow values> A hollow cylindrical tube with an upper inner diameter of 75 mm, a lower inner diameter of 85 mm, and a height of 40 mm was placed in the center of a glass plate (30 cm x 30 cm), and the mixed foamed gypsum slurry was immediately poured into the hollow tube until it was full. The hollow tube was then pulled up perpendicular to the glass plate, and the spread of the foamed gypsum slurry was measured. The diameter at the maximum extent of the spread and the diameter perpendicular to it were measured, and the average value was taken as the flow value.

[0038] [Preparation of hardened gypsum pieces] The prepared foamed gypsum slurry was poured into a mold and allowed to harden at room temperature. After hardening, it was removed from the mold and allowed to harden in a 40°C drying oven until a constant weight was achieved to produce hardened gypsum pieces (2cm × 2cm × 8cm). The average diameter and coefficient of variation of voids originating from bubbles, and the content of micropores with a diameter of less than 200 μm were calculated using the following method. The results are shown in Table 4.

[0039] <Method for measuring void diameter> The fabricated hardened gypsum pieces were cut, and the cut surfaces were observed using a desktop electron microscope TM-3030Plus (manufactured by Hitachi High-Technologies Corporation). The captured images were analyzed using the image analysis software Image-Pro Premier (manufactured by Nippon Roper Co., Ltd.), and the average diameter of the voids was calculated. (SEM measurement conditions) Observation mode: Secondary electron standard Acceleration voltage: 15kV (normal mode) Magnification: 30x Observation scope: Four fracture surfaces (2 x 2 cm) of the hardened plaster piece were observed.

[0040] The uniformity of voids and the content of microbubbles were evaluated according to the following criteria. (1) Uniformity of voids A coefficient of variation of 0.40 or less, calculated from the void diameter and its standard deviation, was deemed acceptable. (2) Percentage of micropores with a diameter of less than 200 μm ◎: 0%, ○: 0.1% or more and less than 10.0%, ×: 10.0% or more

[0041] [Table 4]

[0042] It can be confirmed that the voids in the gypsum board produced using the foaming agent of the present invention have few micropores and are almost uniform in size. In contrast, it can be confirmed that the gypsum board produced using the foaming agent of the comparative example contains many micropores, and their size varies.

Claims

1. A foaming agent for the manufacture of gypsum board containing an alkyl sulfate (A) represented by the following general formula (1). R 1 OSO 3 M 1 (1) (In the formula, R 1 teeth 1 This represents a branched alkyl group with 9 to 11 carbon atoms, where the degree of branching obtained by subtracting 1 from the number of methyl groups determined by 1H-NMR measurement is 1.8 to 3.

0. 1 (This indicates alkali metals, ammonium, or organic ammonium.)

2. A method for producing a foaming agent for manufacturing gypsum board according to Claim 1, A method for producing a foaming agent for gypsum board manufacturing, wherein the alkyl sulfate (A) is produced by sulfurizing a branched aliphatic alcohol synthesized from a propylene and / or butylene oligomer by the oxo method, and then neutralizing it.

3. The foaming agent for manufacturing gypsum board according to claim 1, further comprising at least one selected from an alkyl ether sulfate (B) represented by the following general formula (2) and an alkyl sulfate (C) represented by the following general formula (3) (excluding the one represented by the aforementioned general formula (1)). R 2 O(CH 2 CH 2 O) n SO 3 M 2 (2) (In the formula, R 2 n is an alkyl group having 8 to 18 carbon atoms, n is an integer from 1 to 10, M 2 (This indicates alkali metals, ammonium, or organic ammonium.) R 3 OSO 3 M 3 (3) (In the formula, R 3 M is an alkyl group having 8 to 18 carbon atoms. 3 (This indicates alkali metals, ammonium, or organic ammonium.)

4. The foaming agent for manufacturing gypsum board according to claim 3, wherein the alkyl sulfate (A) is contained in an amount of 30 to 90% by mass, with the total of (A), (B), and (C) being 100% by mass.

5. A method for producing gypsum board, comprising the steps of: blowing air into a foaming agent or an aqueous solution thereof as described in claim 1 to generate foam; and mixing the foam into a kneading material containing calcined gypsum and water to obtain a foamed gypsum slurry.

Citation Information

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